The yield of alfa-alfa from a random sample of six test plots is 1.4, 1.6, 0.9, 1.9, 2.2, and 1.2 tons per acre. Test at the 0.05 level of significance whether this data supports the contention that the average yield for this kind of alfa-alfa is 1.5 tons per acre. Instructions: Assume a two-tailed test, in addressing the problem obtain the value of the test statistic and its corresponding p – value up to four decimal places. Ot 3D0.1730;B р- value 0. 8694 Ot = 0.1730; P р— value 0. 5653 Ot 3D0.1730; р— value 0.4347 t%3D — 0. 1730;B р — value 0. 5653

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The yield of alfa-alfa from a random sample of six test plots is 1.4, 1.6, 0.9, 1.9, 2.2,
and 1.2 tons per acre. Test at the 0.05 level of significance whether this data
supports the contention that the average yield for this kind of alfa-alfa is 1.5 tons per
acre.
Instructions: Assume a two-tailed test, in addressing the problem obtain the value of
the test statistic and its corresponding p – value up to four decimal places.
Ot 3D0.1730;B р- value
0. 8694
Ot = 0.1730; P
р— value
0. 5653
Ot 3D0.1730; р— value
0.4347
t%3D — 0. 1730;B р — value
0. 5653
Transcribed Image Text:The yield of alfa-alfa from a random sample of six test plots is 1.4, 1.6, 0.9, 1.9, 2.2, and 1.2 tons per acre. Test at the 0.05 level of significance whether this data supports the contention that the average yield for this kind of alfa-alfa is 1.5 tons per acre. Instructions: Assume a two-tailed test, in addressing the problem obtain the value of the test statistic and its corresponding p – value up to four decimal places. Ot 3D0.1730;B р- value 0. 8694 Ot = 0.1730; P р— value 0. 5653 Ot 3D0.1730; р— value 0.4347 t%3D — 0. 1730;B р — value 0. 5653
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